Md. Moniruzzaman: High Temperature Fundamentals of Ni-based Superalloys : Diffusion, Creep Strength and Surface Stability at Elevated Temperature - Taschenbuch
[EAN: 9783659684692], Neubuch, [PU: LAP LAMBERT Academic Publishing], nach der Bestellung gedruckt Neuware - Over the last 50 years, temperature capability of Ni-based superalloys has bee… Mehr…
[EAN: 9783659684692], Neubuch, [PU: LAP LAMBERT Academic Publishing], nach der Bestellung gedruckt Neuware - Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is the most important property for gas turbine as the rafted structure is collapsed in the later stage causing unexpected deterioration of strength. Diffusion of elements is important for understanding the high temperature processes including homogenization and precipitation of the phases. Alloys with the Re/Al ratio up to 0.1 shows satisfactory oxidation resistance but that greater than 0.1 exhibits poor performance at 1373 K. Rafting is caused by the strain energy resulting from Gamma/Gamma' coherent interface. Furthermore, creep strain rate, instantaneous strain and time of starting the interfacial transition from coherent state to semi-coherent state decide substantially the morphology in the later stage of creep. Magnitude of the interdiffusion coefficients is found in the descending order of Ru, V, Mo, Ti, Nb, Re and Ta at all temperatures ranging from 1423 to 1573 K. The analysis should contribute in the understanding of design Ni-based superalloys with satisfactory high temperature properties. 124 pp. Englisch, Books<
Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is … Mehr…
Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is the most important property for gas turbine as the rafted structure is collapsed in the later stage causing unexpected deterioration of strength. Diffusion of elements is important for understanding the high temperature processes including homogenization and precipitation of the phases. Alloys with the Re/Al ratio up to 0.1 shows satisfactory oxidation resistance but that greater than 0.1 exhibits poor performance at 1373 K. Rafting is caused by the strain energy resulting from ¿/¿' coherent interface. Furthermore, creep strain rate, instantaneous strain and time of starting the interfacial transition from coherent state to semi-coherent state decide substantially the morphology in the later stage of creep. Magnitude of the interdiffusion coefficients is found in the descending order of Ru, V, Mo, Ti, Nb, Re and Ta at all temperatures ranging from 1423 to 1573 K. The analysis should contribute in the understanding of design Ni-based superalloys with satisfactory high temperature properties. Buch (fremdspr.) Md. Moniruzzaman#Yoshinori Murata Taschenbuch, LAP LAMBERT Academic Publishing, 13.03.2015, LAP LAMBERT Academic Publishing, 2015<
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Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is … Mehr…
Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is the most important property for gas turbine as the rafted structure is collapsed in the later stage causing unexpected deterioration of strength. Diffusion of elements is important for understanding the high temperature processes including homogenization and precipitation of the phases. Alloys with the Re/Al ratio up to 0.1 shows satisfactory oxidation resistance but that greater than 0.1 exhibits poor performance at 1373 K. Rafting is caused by the strain energy resulting from ¿/¿' coherent interface. Furthermore, creep strain rate, instantaneous strain and time of starting the interfacial transition from coherent state to semi-coherent state decide substantially the morphology in the later stage of creep. Magnitude of the interdiffusion coefficients is found in the descending order of Ru, V, Mo, Ti, Nb, Re and Ta at all temperatures ranging from 1423 to 1573 K. The analysis should contribute in the understanding of design Ni-based superalloys with satisfactory high temperature properties. Buch (fremdspr.) Md. Moniruzzaman#Yoshinori Murata Taschenbuch, LAP LAMBERT Academic Publishing, 13.03.2015, LAP LAMBERT Academic Publishing, 2015<
Thalia.at
Nr. 42327215. Versandkosten:, Versandfertig in 7 - 9 Tagen, AT. (EUR 0.00) Details...
(*) Derzeit vergriffen bedeutet, dass dieser Titel momentan auf keiner der angeschlossenen Plattform verfügbar ist.
Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is … Mehr…
Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is the most important property for gas turbine as the rafted structure is collapsed in the later stage causing unexpected deterioration of strength. Diffusion of elements is important for understanding the high temperature processes including homogenization and precipitation of the phases. Alloys with the Re/Al ratio up to 0.1 shows satisfactory oxidation resistance but that greater than 0.1 exhibits poor performance at 1373 K. Rafting is caused by the strain energy resulting from Gamma/Gamma' coherent interface. Furthermore, creep strain rate, instantaneous strain and time of starting the interfacial transition from coherent state to semi-coherent state decide substantially the morphology in the later stage of creep. Magnitude of the interdiffusion coefficients is found in the descending order of Ru, V, Mo, Ti, Nb, Re and Ta at all temperatures ranging from 1423 to 1573 K. The analysis should contribute in the understanding of design Ni-based superalloys with satisfactory high temperature properties. Bücher > Fremdsprachige Bücher > Englische Bücher 220 x 150 x 7 mm , LAP LAMBERT Academic Publishing, LAP LAMBERT Academic Publishing<
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Moniruzzaman, Md.; Murata, Yoshinori: High Temperature Fundamentals of Ni-based Superalloys Diffusion, Creep Strength and Surface Stability at Elevated Temperature - neues Buch
[EAN: 9783659684692], Neubuch, [PU: LAP LAMBERT Academic Publishing], nach der Bestellung gedruckt Neuware - Over the last 50 years, temperature capability of Ni-based superalloys has bee… Mehr…
[EAN: 9783659684692], Neubuch, [PU: LAP LAMBERT Academic Publishing], nach der Bestellung gedruckt Neuware - Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is the most important property for gas turbine as the rafted structure is collapsed in the later stage causing unexpected deterioration of strength. Diffusion of elements is important for understanding the high temperature processes including homogenization and precipitation of the phases. Alloys with the Re/Al ratio up to 0.1 shows satisfactory oxidation resistance but that greater than 0.1 exhibits poor performance at 1373 K. Rafting is caused by the strain energy resulting from Gamma/Gamma' coherent interface. Furthermore, creep strain rate, instantaneous strain and time of starting the interfacial transition from coherent state to semi-coherent state decide substantially the morphology in the later stage of creep. Magnitude of the interdiffusion coefficients is found in the descending order of Ru, V, Mo, Ti, Nb, Re and Ta at all temperatures ranging from 1423 to 1573 K. The analysis should contribute in the understanding of design Ni-based superalloys with satisfactory high temperature properties. 124 pp. Englisch, Books<
Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is … Mehr…
Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is the most important property for gas turbine as the rafted structure is collapsed in the later stage causing unexpected deterioration of strength. Diffusion of elements is important for understanding the high temperature processes including homogenization and precipitation of the phases. Alloys with the Re/Al ratio up to 0.1 shows satisfactory oxidation resistance but that greater than 0.1 exhibits poor performance at 1373 K. Rafting is caused by the strain energy resulting from ¿/¿' coherent interface. Furthermore, creep strain rate, instantaneous strain and time of starting the interfacial transition from coherent state to semi-coherent state decide substantially the morphology in the later stage of creep. Magnitude of the interdiffusion coefficients is found in the descending order of Ru, V, Mo, Ti, Nb, Re and Ta at all temperatures ranging from 1423 to 1573 K. The analysis should contribute in the understanding of design Ni-based superalloys with satisfactory high temperature properties. Buch (fremdspr.) Md. Moniruzzaman#Yoshinori Murata Taschenbuch, LAP LAMBERT Academic Publishing, 13.03.2015, LAP LAMBERT Academic Publishing, 2015<
Nr. 42327215. Versandkosten:, Versandfertig in 7 - 9 Tagen, AT. (EUR 0.00)
Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is … Mehr…
Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is the most important property for gas turbine as the rafted structure is collapsed in the later stage causing unexpected deterioration of strength. Diffusion of elements is important for understanding the high temperature processes including homogenization and precipitation of the phases. Alloys with the Re/Al ratio up to 0.1 shows satisfactory oxidation resistance but that greater than 0.1 exhibits poor performance at 1373 K. Rafting is caused by the strain energy resulting from ¿/¿' coherent interface. Furthermore, creep strain rate, instantaneous strain and time of starting the interfacial transition from coherent state to semi-coherent state decide substantially the morphology in the later stage of creep. Magnitude of the interdiffusion coefficients is found in the descending order of Ru, V, Mo, Ti, Nb, Re and Ta at all temperatures ranging from 1423 to 1573 K. The analysis should contribute in the understanding of design Ni-based superalloys with satisfactory high temperature properties. Buch (fremdspr.) Md. Moniruzzaman#Yoshinori Murata Taschenbuch, LAP LAMBERT Academic Publishing, 13.03.2015, LAP LAMBERT Academic Publishing, 2015<
Nr. 42327215. Versandkosten:, Versandfertig in 7 - 9 Tagen, AT. (EUR 0.00)
Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is … Mehr…
Over the last 50 years, temperature capability of Ni-based superalloys has been improved as a means to improving thermal efficiencies in aeroengines and power stations. Creep strength is the most important property for gas turbine as the rafted structure is collapsed in the later stage causing unexpected deterioration of strength. Diffusion of elements is important for understanding the high temperature processes including homogenization and precipitation of the phases. Alloys with the Re/Al ratio up to 0.1 shows satisfactory oxidation resistance but that greater than 0.1 exhibits poor performance at 1373 K. Rafting is caused by the strain energy resulting from Gamma/Gamma' coherent interface. Furthermore, creep strain rate, instantaneous strain and time of starting the interfacial transition from coherent state to semi-coherent state decide substantially the morphology in the later stage of creep. Magnitude of the interdiffusion coefficients is found in the descending order of Ru, V, Mo, Ti, Nb, Re and Ta at all temperatures ranging from 1423 to 1573 K. The analysis should contribute in the understanding of design Ni-based superalloys with satisfactory high temperature properties. Bücher > Fremdsprachige Bücher > Englische Bücher 220 x 150 x 7 mm , LAP LAMBERT Academic Publishing, LAP LAMBERT Academic Publishing<
Nr. A1036010671. Versandkosten:Lieferzeiten außerhalb der Schweiz 3 bis 21 Werktage, , Versandfertig innert 4 - 7 Werktagen, zzgl. Versandkosten. (EUR 18.79)
Moniruzzaman, Md.; Murata, Yoshinori: High Temperature Fundamentals of Ni-based Superalloys Diffusion, Creep Strength and Surface Stability at Elevated Temperature - neues Buch
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Detailangaben zum Buch - High Temperature Fundamentals of Ni-based Superalloys
EAN (ISBN-13): 9783659684692 ISBN (ISBN-10): 3659684694 Gebundene Ausgabe Taschenbuch Erscheinungsjahr: 2015 Herausgeber: Lap Lambert Academic Publishing
Buch in der Datenbank seit 2015-04-29T16:01:01+02:00 (Zurich) Detailseite zuletzt geändert am 2024-01-30T11:44:27+01:00 (Zurich) ISBN/EAN: 9783659684692
ISBN - alternative Schreibweisen: 3-659-68469-4, 978-3-659-68469-2 Alternative Schreibweisen und verwandte Suchbegriffe: Autor des Buches: murata, superalloys Titel des Buches: fundamentals high, superalloys, creep